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Water activities and osmotic and activity coefficients of aqueous solutions of nitrates at 25 degrees C by the hygrometric method

机译:吸湿法测定25℃硝酸盐水溶液的水分活度和渗透活性系数

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摘要

The thermodynamic properties of LiNO3(aq.), NaNO3(aq.), KNO3(aq.), NH4NO3(aq.), Mg(NO3)(2)(aq.), Ca(NO3)(2)(aq.), and Ba(NO3)(2)(aq.) have been determined at 25degreesC by the hygrometric method for molalities, ranging from 0.1 mol-kg(-1) to saturation. From measurements of droplet diameters of reference solutions NaCl(aq.) or LiCl(aq.), the dependence of relative humidity on solute concentration was determined. The data on the relative humidity allow deduction of water activities and the osmotic coefficients at various molalities. Osmotic coefficient data are described by Pitzer's ion interaction model. The ion interaction parameters were also determined for each of the salts studied. With these parameters, the solute activity coefficients can be predicted. These results are used to calculate the excess Gibbs energy for these aqueous electrolyte nitrates. Our present results are compared with published thermodynamic data. [References: 14]
机译:LiNO3(水溶液),NaNO3(水溶液),KNO3(水溶液),NH4NO3(水溶液),Mg(NO3)(2)(水溶液),Ca(NO3)(2)(水溶液)的热力学性质)和Ba(NO3)(2)(水溶液)已通过湿度法在25摄氏度下确定的摩尔浓度范围为0.1 mol-kg(-1)至饱和。通过测量参比溶液NaCl(aq。)或LiCl(aq。)的液滴直径,可以确定相对湿度对溶质浓度的依赖性。相对湿度的数据可以推断出各种摩尔浓度下的水分活度和渗透系数。渗透系数数据由Pitzer的离子相互作用模型描述。还确定了所研究每种盐的离子相互作用参数。利用这些参数,可以预测溶质活度系数。这些结果用于计算这些水性硝酸硝酸盐的过量吉布斯能量。我们目前的结果与公开的热力学数据进行了比较。 [参考:14]

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